(18.221.89.183)
Users online: 12900     
Ijournet
Email id
 

Year : 2023, Volume : 18, Issue : 1
First page : ( 37) Last page : ( 42)
Print ISSN : 2229-628X. Online ISSN : 2582-2683. Published online : 2023 January 27.
Article DOI : 10.5958/2582-2683.2023.00007.2

Green synthesis and characterization of zinc oxide nanoparticles

Putta Aparna*, Vastrad Jyoti V.

College of Community Science, University of Agricultural Sciences, Dharwad (M.S.) India

*Corresponding author E-mail: apamakallam26@gmail.com

Online published on 27 December, 2023.

Received:  27  August,  2022; Accepted:  16  November,  2022.

Abstract

Green synthesis of zinc oxide nanoparticles (ZnO-NPs) is a novel and non-toxic process that replaces harmful existing physical and chemical methods. The synthesized nanoparticles with C. reticulata peel powder were characterized with visual analysis, UV-visible spectroscopy and PSA for nanoparticle confirmation. The maximum UV-visible spectral absorption peaks were observed in aqueous extract 357 nm compare to ethanol extract 340.2 nm wavelengths. Aqueous extract showed greater particle size with 55 nm, whereas the particle size in ethanol extract was found to with 75.8 nm with ZnO-1 precursor. Similarly, an average particle size of 76.7 nm in aqueous extract was observed in ZnO-2 precursor, whereas in ethanol extract it is 82.2 nm. As a result of the experimental study, water has been identified as an universal, safe, and environmentally friendly solvent with an optimal and acceptable solvent system for green synthesis of zinc oxide nanoparticles.

Top

Keywords

Green synthesis, Citrus reticulate, Zinc oxide nanoparticles (ZnO NPs), Extract, Precursor.

Top

  
║ Site map ║ Privacy Policy ║ Copyright ║ Terms & Conditions ║ Page Rank Tool
750,910,258 visitor(s) since 30th May, 2005.
All rights reserved. Site designed and maintained by DIVA ENTERPRISES PVT. LTD..
Note: Please use Internet Explorer (6.0 or above). Some functionalities may not work in other browsers.